Method and device for making wire baskets
A device and method for making a wire basket, the device having a spinning fixture with a top plate with an outer periphery, arms attached at a top end at the periphery of the top plate and projecting downwardly, such that bottom ends of the arms collectively form a circular arrangement having a diameter greater than the diameter of the top plate, a means for guiding wire onto the spinning fixture such that the wire is wound onto the spinning fixture in a preselected pattern, and contacts to maintain the wire onto the spinning fixture in preselected locations, and the method including providing an apparatus for delivery of wire through a wire feed and for translating the wire feed lineally along a traverse, providing a spinning fixture for winding wire thereon, and winding a preselected pattern of wire onto the spinning fixture by translating the wire feed along the transverse.
1 . A device for making a wire basket, comprising:
a) a rotatable spinning fixture with a circular top plate with an outer periphery;
b) at least three arms attached at a top end at the periphery of the top plate and projecting downwardly at an angle theta relative to the vertical, such that bottom ends of the arms collectively form a circular arrangement having a diameter greater than the diameter of the top plate;
c) a traverse apparatus for guiding wire onto the spinning fixture such that, as the spinning fixture is rotated, the wire is wound onto the spinning fixture in a preselected pattern, the traverse apparatus comprising:
a traverse guide oriented parallel to the at least three arms, and
a wire feed movable along a length of the traverse guide to form wire crossing locations; and
d) wherein the rotatable spinning fixture includes contacts to maintain the wire on to the spinning fixture in preselected locations.
2 . The device claimed in claim 1 , wherein the traverse apparatus further comprises a traverse drive operatively coupled to the wire feed, the wire feed being moveable along the length of the traverse guide by the traverse drive.
3 . The device claimed in claim 2 , wherein the contacts are prongs which extend away from a top surface of each arm of the at least three arms.
4 . The device claimed in claim 3 , wherein each of the at least three arms comprises a longitudinal member having the top surface and a pair of side plates with a first side plate positioned on both sides a first side of the longitudinal member and a second side plate positioned on a side, opposite said first side of the longitudinal member, each side plate of the pair of side plates having at least two of the prongs extending therefrom.
5 . The device claimed in claim 4 , wherein the pair of side plates is coupled to the longitudinal member, the pair of side plates having:
an extended position, where the prongs extend beyond the top surface of the longitudinal member; and
a retracted position, where the prongs are situated below the top surface of the longitudinal member.
6 . The device claimed in claim 5 , wherein each of the pair of side plate plates is coupled to its corresponding longitudinal member with two pivoting links.
7 . The device claimed in claim 5 , wherein each of the arms further comprises a spring coupled to the pair of side plates to bias the pair of side plates in the extended position.
8 . The device claimed in claim 7 , further comprising a release actuator operatively coupled to each of the pair of side plate plates to shift the respective side plate into the retracted position.
9 . The device claimed in claim 8 , further comprising a welding apparatus having a welding electrodes electrode for forming welds at the wire crossing locationson the wire.
10 . The device claimed in claim 8 , further comprising a fixture ring positioned in contact with the bottom end of each side plate, the release actuator operatively coupled to shift the fixture ring, which in turn shifts each of the pair of side plate plates between the extended position and the retracted position.
11 . The device claimed in claim 9 , wherein the welding apparatus is oriented parallel to the arms at the angle theta relative to the vertical.
12 . The device claimed in claim 11 , further comprising wherein the at least three arms comprises at least three additional arms without side plates, the at least three additional arms being that are attached at the top end at the periphery of to the top plate alternately with the arms and projecting downwardly at the angle theta relative to the vertical.
13 . The device claimed in claim 1 , wherein the at least three arms are rigidly attached at the top end at the periphery of the top plate.
14 . A method for making a wire basket, comprising:
a) providing a traverse apparatus comprising a traverse guide and a wire feed movable along a length of the traverse guide, for delivery of wire through the wire feed;
b) providing a rotatable spinning fixture for winding the wirethereon, the spinning fixture comprising a top plate with an outer periphery and at least three arms attached at a top end at the periphery of the top plate, the at least three arms projecting downwardly at an angle theta relative to the vertical, and positioning the spinning fixture such that the at least three arms are orientated parallel to the traverse guide; and
c) winding the wire into a preselected pattern of wire onto the spinning fixture by rotating the spinning fixture while selectively moving the wire feed along the length of the traverse guide.
15 . The method claimed in claim 14 , wherein the spinning fixture comprises a plurality of longitudinal members having a top surface, the winding step further comprising directing the wire onto contacts extending above the top surfaces of the plurality of longitudinal members to form the preselected pattern of wire.
16 . The method claimed in claim 15 , further comprising forming welds at wire crossing locations on the formed wire pattern.
17 . The method claimed in claim 16 , wherein the spinning fixture comprises side plates coupled to the longitudinal members, the contacts being prongs fixed to the side plates, the method further comprising retracting the side plates such that the prongs are situated below the top surface of the longitudinal member after the winding and welding is complete.
18 . The method claimed in claim 17 , wherein the preselected wire pattern is a diamond shaped wire pattern formed with a single strand of wire.
19 . The method claimed in claim 18 17 , further comprising releasably securing an end of the single strand of wire to the top plate prior to winding the preselected pattern of wire onto the spinning fixture.